Two streams are mixed in an adiabatic mixer, as shown in the figure. It is known that: • Stream 1 is saturated liquid/saturated vapour mixture at 1 bar with flow rate 1.17 kg/s and quality 0.20 • Stream 2 is superheated vapour at 1 bar and 470°C • Stream 3, the product stream, is a saturated liquid/saturated vapour mixture at 1 bar with quality 0.89 Neglect kinetic and potential energy changes and calculate the mass flow rate of the superheated vapour stream, in kg/s. Mixer 3

Introduction to Chemical Engineering Thermodynamics
8th Edition
ISBN:9781259696527
Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Publisher:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Chapter1: Introduction
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Two streams are mixed in an adiabatic mixer, as shown in the figure. It is known
that:
• Stream 1 is saturated liquid/saturated vapour mixture at 1 bar with flow rate
1.17 kg/s and quality 0.20
• Stream 2 is superheated vapour at 1 bar and 470°C
• Stream 3, the product stream, is a saturated liquid/saturated vapour mixture
at 1 bar with quality 0.89
Neglect kinetic and potential energy changes and calculate the mass flow rate of the
superheated vapour stream, in kg/s.
(1)
(2)
Mixer
(3
Transcribed Image Text:Two streams are mixed in an adiabatic mixer, as shown in the figure. It is known that: • Stream 1 is saturated liquid/saturated vapour mixture at 1 bar with flow rate 1.17 kg/s and quality 0.20 • Stream 2 is superheated vapour at 1 bar and 470°C • Stream 3, the product stream, is a saturated liquid/saturated vapour mixture at 1 bar with quality 0.89 Neglect kinetic and potential energy changes and calculate the mass flow rate of the superheated vapour stream, in kg/s. (1) (2) Mixer (3
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